Gonzalez Nilo, Danilo and Gonzalez, Wendy. Centro de Bioinformatica y Simulacion Molecular, Universidad de Talca, Talca, Chile.Potassium channels share a common selectivity filter that determines the conduction characteristics of the pore. Diversity in K+ channels is given by how they are gated open. TASK-2, TALK-1 and TALK-2 are two-pore region (2P) KCNK K+ channels gated open by extracellular alkalinization. We have explored the mechanism for this alkalinization-dependent gating using molecular simulation and site-directed mutagenesis followed by functional assay. We show that the side-chain of a single arginine residue (R224) near the pore senses pH in TASK-2 with an unusual pKa of 8.0, a shift likely due to its hydrophobic environment. ...
Potassium (K (+)) channels can regulate ionic conduction through their pore by a mechanism, involvin...
AbstractVoltage-gated ion channels are crucial for regulation of electric activity of excitable tiss...
Potassium (K+) channels can regulate ionic conduction through their pore by a mechanism, involving t...
K(+) channels share common selectivity characteristics but exhibit a wide diversity in how they are ...
Marquez, V (Marquez, Valeria); Gonzalez-Nilo, FD (Gonzalez-Nilo, Fernando D.). Univ Talca, Ctr Bioin...
M.I. Niemeyer*, F.D. González-Nilo†, L. Zúñiga*, W. González†, L.P. Cid* and F.V. Sepúlveda* *CE...
Understanding the gating mechanism of ion channel proteins is key to understanding the regulation of...
Potassium channels are transmembrane proteins that facilitate the passive and selective flux of K+ i...
Potassium two-pore domain (K2P) family ion channels are increasingly appreciated as important electr...
Two-pore-domain potassium (K2P) channels are responsible for background leak currents which regulate...
The gating mechanism of transmembrane ion channels is crucial for understanding how these proteins c...
Gonzalez, W (Gonzalez, Wendy). Univ Talca, Ctr Bioinformat & Simulac Mol, Talca 3465548, ChileProton...
Potassium channels are presumed to have two allosterically coupled gates, the activation gate and th...
The gating mechanism of transmembrane ion channels is crucial for understanding how these proteins c...
Protein dynamics are essential to function. One example of this is the various gating mechanisms wit...
Potassium (K (+)) channels can regulate ionic conduction through their pore by a mechanism, involvin...
AbstractVoltage-gated ion channels are crucial for regulation of electric activity of excitable tiss...
Potassium (K+) channels can regulate ionic conduction through their pore by a mechanism, involving t...
K(+) channels share common selectivity characteristics but exhibit a wide diversity in how they are ...
Marquez, V (Marquez, Valeria); Gonzalez-Nilo, FD (Gonzalez-Nilo, Fernando D.). Univ Talca, Ctr Bioin...
M.I. Niemeyer*, F.D. González-Nilo†, L. Zúñiga*, W. González†, L.P. Cid* and F.V. Sepúlveda* *CE...
Understanding the gating mechanism of ion channel proteins is key to understanding the regulation of...
Potassium channels are transmembrane proteins that facilitate the passive and selective flux of K+ i...
Potassium two-pore domain (K2P) family ion channels are increasingly appreciated as important electr...
Two-pore-domain potassium (K2P) channels are responsible for background leak currents which regulate...
The gating mechanism of transmembrane ion channels is crucial for understanding how these proteins c...
Gonzalez, W (Gonzalez, Wendy). Univ Talca, Ctr Bioinformat & Simulac Mol, Talca 3465548, ChileProton...
Potassium channels are presumed to have two allosterically coupled gates, the activation gate and th...
The gating mechanism of transmembrane ion channels is crucial for understanding how these proteins c...
Protein dynamics are essential to function. One example of this is the various gating mechanisms wit...
Potassium (K (+)) channels can regulate ionic conduction through their pore by a mechanism, involvin...
AbstractVoltage-gated ion channels are crucial for regulation of electric activity of excitable tiss...
Potassium (K+) channels can regulate ionic conduction through their pore by a mechanism, involving t...